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High-throughput and real-time microalgae monitoring platform using lens-free shadow imaging system (LSIS)

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dc.contributor.author서동민-
dc.contributor.authorMohendra Roy-
dc.contributor.author김재우-
dc.contributor.author안기영-
dc.contributor.author황용하-
dc.contributor.author곽연화-
dc.contributor.author오상우-
dc.contributor.author이문진-
dc.contributor.author이재우-
dc.contributor.author서성규-
dc.date.accessioned2021-12-08T13:41:08Z-
dc.date.available2021-12-08T13:41:08Z-
dc.date.issued20151104-
dc.identifier.urihttps://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/4058-
dc.description.abstractFloc size analysis is one of the major processes in bio-flocculant efficiency determination, which is critical for microalgae harvesting. Till now the flocculation analysis has been performed by using photospectrometry. In this conventional method, optical density of a sample is measured in a time interval by collecting the sample from a fixed point of the container, up to ~5 hrs of observation period. This time consuming process may not guarantee the viability of the algae, which limits the efficient harvesting. To address this issue, we introduce a real time flocculation monitoring system based on the lens-free shadow imaging technique (LSIT). This simple, fast, and cost-effective system automatically analyzes the thousands of single microalgae all in parallel and monitors their flocculation by using a custom developed algorithm. We evaluate the performance of this approach by comparing the results with the standard method, showing a good agreement between two modalities. method, optical density of a sample is measured in a time interval by collecting the sample from a fixed point of the container, up to ~5 hrs of observation period. This time consuming process may not guarantee the viability of the algae, which limits the efficient harvesting. To address this issue, we introduce a real time flocculation monitoring system based on the lens-free shadow imaging technique (LSIT). This simple, fast, and cost-effective system automatically analyzes the thousands of single microalgae all in parallel and monitors their flocculation by using a custom developed algorithm. We evaluate the performance of this approach by comparing the results with the standard method, showing a good agreement between two modalities.-
dc.language영어-
dc.language.isoENG-
dc.titleHigh-throughput and real-time microalgae monitoring platform using lens-free shadow imaging system (LSIS)-
dc.title.alternativeHigh-throughput and real-time microalgae monitoring platform using lens-free shadow imaging system (LSIS)-
dc.typeConference-
dc.citation.titleIEEE Sensors 2015 Conference-
dc.citation.volume1-
dc.citation.number1-
dc.citation.startPage1630-
dc.citation.endPage1632-
dc.citation.conferenceNameIEEE Sensors 2015 Conference-
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